2022 - 2026 Analysis of Molecular Mechanisms of Gestational Diabetes Mellitus by Histone O-GlcNAcylation and Establishment of Therapeutic Basis
2022 - 2024 新学術領域「グライコエピジェネティクス」の創生に向けた基盤研究
2020 - 2022 Study of nuclear-cytoplasmic incompatibility for the interspecies cloning.
2020 - 2022 Studies on molecular biology of intractable cancers focused on the interaction of epigenetics with autophagy
2015 - 2020 エピジェネティクス情報を用いた栄養素の選択
2014 - 2017 Epigenetics of trophoblast and embryonic stem cells by a novel histone-glycosylation
2014 - 2017 Role of Linker Histone in the Formation and Function of Nucleolus.
2012 - 2014 Role of oocyte-specific linker histone H1foo on the establishment of epigenome
Show all
Papers (29):
Kenta Nishitani, Koji Hayakawa, Satoshi Tanaka. Epidermal growth factor represses differentiation of mouse trophoblast stem cells into spongiotrophoblast cells via epidermal growth factor receptor. Biochemical and Biophysical Research Communications. 2023. 657. 100-107
Kenta Nishitani, Koji Hayakawa, Masayuki Minatomoto, Keisuke Tanaka, Hidehiko Ogawa, Hirotatsu Kojima, Satoshi Tanaka. N-Oleoyldopamine promotes the differentiation of mouse trophoblast stem cells into parietal trophoblast giant cells. Biochemical and biophysical research communications. 2022. 636. Pt 1. 205-212
Koji Hayakawa, Satoshi Tanaka. Oocyte-specific linker histone H1foo interacts with Esrrb to induce chromatin decondensation at specific gene loci. Biochemical and Biophysical Research Communications. 2021. 561. 165-171
Protein Phosphatase 6 Promotes Neurite Outgrowth by Promoting mTORC2 Activity in N2a Cells. The Journal of Biochemistry. 2021. in press
Transcriptome analysis using patient iPSC-derived skeletal myocytes: Bet1L as a new molecule possibly linked to neuromuscular degeneration in ALS. Experimental Neurology. 2021. in press
R. Tani, K. Hayakawa, S. Tanaka, K. Shiota. Linker histone variant H1T targets rDNA repeats. MOLECULAR BIOLOGY OF THE CELL. 2014. 25
C. Yoneda, K. Hayakawa, M. Hirosawa, S. Tanaka, K. Shiota. The influence of glucose concentration on the pluripotency of mouse embryonic stem cells. MOLECULAR BIOLOGY OF THE CELL. 2014. 25
日本生化学会
, The Japanese Society for Regenerative Medicine
, THE MOLECULAR BIOLOGY SOCIETY OF JAPAN
, The Japanese Society for Epigenetics
, SOCIETY FOR REPRODUCTION AND DEVELOPMENT